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Climate change leads to differential shifts in the timing of annual cycle stages in a migratory bird

机译:气候变化导致迁徙鸟类的年度周期阶段的时间差异转变

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Shifts in reproductive phenology due to climate change have been well documented in many species but how, within the same species, other annual cycle stages (e.g. moult, migration) shift relative to the timing of breeding has rarely been studied. When stages shift at different rates, the interval between stages may change resulting in overlaps, and as each stage is energetically demanding, these overlaps may have negative fitness consequences. We used long-term data of a population of European pied flycatchers (Ficedula hypoleuca) to investigate phenological shifts in three annual cycle stages: spring migration (arrival dates), breeding (egg-laying and hatching dates) and the onset of postbreeding moult. We found different advancements in the timing of breeding compared with moult (moult advances faster) and no advancement in arrival dates. To understand these differential shifts, we explored which temperatures best explain the year-to-year variation in the timing of these stages, and show that they respond differently to temperature increases in the Netherlands, causing the intervals between arrival and breeding and between breeding and moult to decrease. Next, we tested the fitness consequences of these shortened intervals. We found no effect on clutch size, but the probability of a fledged chick to recruit increased with a shorter arrival-breeding interval (earlier breeding). Finally, mark-recapture analyses did not detect an effect of shortened intervals on adult survival. Our results suggest that the advancement of breeding allows more time for fledgling development, increasing their probability to recruit. This may incur costs to other parts of the annual cycle, but, despite the shorter intervals, there was no effect on adult survival. Our results show that to fully understand the consequences of climate change, it is necessary to look carefully at different annual cycle stages, especially for organisms with complex cycles, such as migratory birds.
机译:由于气候变化,在许多物种中造成了很好的记录,但在同一种类中,如何在相同的年度周期阶段(例如,换羽)相对于育种时间的时间转变,因此如何归因于许多物种。当阶段以不同的速率移位时,阶段之间的间隔可以改变导致重叠,并且随着每个阶段的高苛刻,这些重叠可能具有负面的健身后果。我们使用了欧洲戏捕蝇器(Fedula Hupleuca)的长期数据来调查三个年度周期阶段的毒性转变:春季移民(到达日期),繁殖(鸡蛋和孵化日期)和后血炸弹的发作。与换羽相比,我们发现育种时间的不同进展(换羽速度较快),抵达日期没有进步。要了解这些差分换档,我们探讨了哪些温度最佳地解释了这些阶段的时间的年度变化,并表明它们对荷兰的温度越来越多地反应,导致抵达和繁殖之间的间隔以及繁殖之间的间隔和繁殖之间的间隔和繁殖换羽减少。接下来,我们测试了这些缩短的间隔的健身后果。我们发现没有对离合器尺寸的影响,但刚刚捕获的雏鸡的可能性随着繁殖的繁殖间隔(早期繁殖)而增加。最后,标记 - 重新捕获分析没有检测到缩短间隔对成人存活的影响。我们的研究结果表明,育种的进步允许更多时间进行删除开发,从而提高其招募的概率。这可能会对年周期的其他部分产生成本,但尽管间隔较短,但对成人生存没有影响。我们的结果表明,为了充分了解气候变化的后果,有必要在不同年度周期阶段仔细看,特别是对于具有复杂循环的生物,例如候鸟。

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